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Elastic properties of Se and As2Se3 glasses under pressure and temperature
Authors:N Soga  M Kunugi  R Ota
Institution:Department of Industrial Chemistry, Kyoto University, Kyoto, Japan;Institute of Geophysics and Planetary Physics, University of California, L.A. 90024, U.S.A.
Abstract:The sound velocities and their pressure and temperature variations of Se and As2Se3 glasses have been determined by means of a pulse superpositions method, and other elastic constants and their pressure and temperature derivatives were calculated from these data. The bulk modulus was found to be 94·6 kbar for Se glass and 143·7 kbar As2Se3 glass, both of which are higher than the values calculated from the previous compression data. No anomaly was observed in any of the pressure and temperature dependence of elastic behavior of these glassses. Furthermore, the comparison of the pressure and temperature derivatives of the bulk modulus indicates that the thermodynamic self-consistency is satisfied on these materials. The bulk moduli of these glasses and crystalline As and Se were used to obtain an empirical bulk modulus-volume relationship for compounds in the As?Se system. The acoustic Grüneisen parameter was calculated and compared with the thermal Grüneisen parameter.
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